Single-cell sequencing unveils the impact of aging on the progenitor cell diversity in the telencephalon of the female killifish N. furzeri

IF 7.8 1区 医学 Q1 Biochemistry, Genetics and Molecular Biology Aging Cell Pub Date : 2024-07-01 DOI:10.1111/acel.14251
Rajagopal Ayana, Caroline Zandecki, Jolien Van houcke, Valerie Mariën, Eve Seuntjens, Lutgarde Arckens
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Abstract

The African turquoise killifish (Nothobranchius furzeri) combines a short lifespan with spontaneous age-associated loss of neuro-regenerative capacity, an intriguing trait atypical for a teleost. The impact of aging on the cellular composition of the adult stem cell niches, leading to this dramatic decline in the postnatal neuro- and gliogenesis, remains elusive. Single-cell RNA sequencing of the telencephalon of young adult female killifish of the short-lived GRZ-AD strain unveiled progenitors of glial and non-glial nature, different excitatory and inhibitory neuron subtypes, as well as non-neural cell types. Sub-clustering of the progenitors identified four radial glia (RG) cell types, two non-glial progenitor (NGP) and four intermediate (intercell) cell states. Two astroglia-like, one ependymal, and one neuroepithelial-like (NE) RG subtype were found at different locations in the forebrain in line with their role, while proliferative, active NGPs were spread throughout. Lineage inference pointed to NE-RG and NGPs as start and intercessor populations for glio- and neurogenesis. Upon aging, single-cell RNA sequencing revealed major perturbations in the proportions of the astroglia and intercell states, and in the molecular signatures of specific subtypes, including altered MAPK, mTOR, Notch, and Wnt pathways. This cell catalog of the young regeneration-competent killifish telencephalon, combined with the evidence for aging-related transcriptomic changes, presents a useful resource to understand the molecular basis of age-dependent neuroplasticity. This data is also available through an online database (killifishbrain_scseq).

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单细胞测序揭示了衰老对雌性箭鱼端脑祖细胞多样性的影响。
非洲绿松石鳉鱼(Nothobranchius furzeri)的寿命很短,但其神经再生能力会随着年龄的增长而自发丧失,这对于远洋鱼类来说是一种非典型的特征。衰老对成体干细胞龛的细胞组成的影响,导致了产后神经和胶质细胞生成的急剧下降,这一点仍然难以捉摸。对短寿命GRZ-AD品系年轻成年雌性鳉鱼的端脑进行单细胞RNA测序,发现了胶质和非胶质性质的祖细胞、不同的兴奋和抑制神经元亚型以及非神经细胞类型。对祖细胞进行分组后发现了四种径向胶质细胞(RG)类型、两种非胶质祖细胞(NGP)和四种中间(细胞间)细胞状态。在前脑的不同位置发现了两种星形胶质细胞样、一种上皮细胞样和一种神经上皮细胞样(NE)RG 亚型,这与它们的作用相符,而增殖活跃的 NGP 则遍布整个前脑。系谱推断表明,NE-RG 和 NGPs 是神经胶质细胞和神经发生的起始和中间群体。随着年龄的增长,单细胞 RNA 测序显示星形胶质细胞和细胞间质的比例以及特定亚型的分子特征发生了重大变化,包括 MAPK、mTOR、Notch 和 Wnt 通路的改变。这份具有年轻再生能力的鳉鱼端脑细胞目录,结合与衰老相关的转录组变化证据,为了解年龄依赖性神经可塑性的分子基础提供了有用的资源。这些数据也可通过在线数据库(killifishbrain_scseq)获得。
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来源期刊
Aging Cell
Aging Cell 生物-老年医学
CiteScore
14.40
自引率
2.60%
发文量
212
审稿时长
8 weeks
期刊介绍: Aging Cell, an Open Access journal, delves into fundamental aspects of aging biology. It comprehensively explores geroscience, emphasizing research on the mechanisms underlying the aging process and the connections between aging and age-related diseases.
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